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A Configurable Dynamic Time Slice Round Robin Scheduling Method

A technology of round-robin scheduling and dynamic time, which is applied in the direction of instrumentation, electrical digital data processing, etc., to achieve the effects of overcoming high data overflow rate, reducing queue switching and hardware overhead, and reasonable time allocation

Active Publication Date: 2018-08-28
HEFEI UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The purpose of the present invention is to overcome the deficiencies in the prior art, and provide a configurable dynamic time slice round-robin scheduling method, in order to realize multi-channel scheduling under the premise of low resource consumption, low data overflow rate and high scalability. Synthesis of tracking data, which can solve the scheduling problem of multiple data cache queues in online tracking systems

Method used

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Embodiment Construction

[0050] In this embodiment, a configurable dynamic time slice round-robin scheduling method is applied to an online tracking system. The online tracking system includes: n online tracking units, a bus arbitration unit and a tracking transmission interface; n online tracking The units correspond to n resource nodes respectively, and are used to collect data in the corresponding resource nodes, and transmit the data to the bus arbitration unit after the request is responded; the bus arbitration unit performs data output through the tracking transmission interface;

[0051] The bus arbitration unit performs dynamic time slice round-robin scheduling on requests according to the following steps:

[0052] Step 1. Set the threshold

[0053] Set the corresponding threshold value according to the respective buffer FIFO capacity in n online tracking units, denoted as {A 1 ,A 2 ,...,A i ,...,A n}, A i Indicates the threshold value of the i-th online tracking unit; 1≤i≤n; due to the d...

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Abstract

The invention discloses a configurable dynamical time slice round-robin scheduling algorithm, which is applicable to the condition that a plurality of on-line tracking units in an on-line tracking system need to carry out data output through a single transmission interface. According to the algorithm, through configuring a corresponding threshold value, time slice length and priority, judgments in active states of the on-line tracking units are combined, and the data output request of each on-line tracking unit is arbitrated by adopting two inquiry ways. By using the configurable dynamical time slice round-robin scheduling algorithm, the synthesis on a plurality of ways of track data can be realized on premises of a low resource consumption, a low data overflow rate and a high expandability, so as to solve the scheduling problem of a plurality of data cache queues in the on-line tracking system.

Description

technical field [0001] The invention belongs to the technical field of bus arbitration, in particular to a configurable dynamic time slice round-robin scheduling method combined with threshold and active state judgment. Background technique [0002] When heterogeneous multi-core SoC has gradually become the mainstream of integrated circuits, fast and effective debugging technology has become the key to reducing the cost of SoC design. In-circuit debugging technology can obtain the desired debugging information in real time without interfering with the operation of the multi-core system, which is an important research direction of debugging design. Online debugging must involve the design of the online trace system. In order to reduce the occupation of chip pin resources, the online trace system usually only has one output port, so the output port becomes the bandwidth bottleneck of the online trace system. For online tracking of multi-core systems, the tracking data of mult...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G06F13/366
CPCG06F13/366G06F2213/36
Inventor 宋宇鲲焦瑞张多利王存
Owner HEFEI UNIV OF TECH
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